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LTC1705 查看數據表(PDF) - Linear Technology

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LTC1705 Datasheet PDF : 28 Pages
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LTC1705
APPLICATIO S I FOR ATIO
Finally, choose a convenient resistor value for R1 (10k is
usually a good value). Now calculate the remaining values:
(K is a constant used in the calculations)
f = chosen crossover frequency
G = 10(GAIN/20) (this converts GAIN in dB to G in
absolute gain)
TYPE 2 Loop:
K
=
Tan
BOOST
2
+
45°
C2 = 1
2πfGKR1
( ) C1= C2 K2 1
R2 = K
2πfC1
RB
=
VREF (R1)
VOUT VREF
TYPE 3 Loop:
K
=
Tan2

BOOST
4
+
45°
C2 = 1
2πfGR1
( ) C1= C2 K 1
R2 = K
2πfC1
R3 = R1
K 1
C3 = 1
2πf KR3
RB
=
VREF (R1)
VOUT VREF
CURRENT LIMIT PROGRAMMING
Programming current limit on the LTC1705 is straight-
forward. The IMAX pin sets the current limit by setting the
maximum allowable voltage drop across QB (the bottom
MOSFET) before the current limit circuit engages. The
voltage across QB is set by its on-resistance and the
current flowing in the inductor, which is the same as the
output current. The LTC1705 current limit circuit inverts
the negative voltage across QB before comparing it with
the voltage at IMAX, allowing the current limit to be set with
a positive voltage.
To set the current limit, calculate the expected voltage
drop across QB at the maximum desired current:
VPROG = (ILIMIT) (RDS(ON))
ILIMIT should be chosen to be quite a bit higher than the
expected operating current, to allow for MOSFET RDS(ON)
changes with temperature. Setting ILIMIT to 150% of the
maximum normal operating current is usually safe and will
adequately protect the power components if they are
chosen properly. Note that the ringing on the switch node
can cause error for the current limit threshold. This factor
will change depending on the layout and the components
used. VPROG is then programmed at the IMAX pin using the
internal 10µA pull-up and an external resistor:
RIMAX = VPROG/10µA
The resulting value of RIMAX should be checked in an
actual circuit to ensure that the current circuit kicks in as
expected. MOSFET RDS(ON) specs are like horsepower
ratings in automobiles and should be taken with a grain of
salt. Circuits that use very low values for RIMAX (<10k)
should be checked carefully, since small changes in RIMAX
can cause large ILIMIT changes when the switch node
ringing makes up a large percentage of the total VPROG
value. If VPROG is set too low, the LTC1705 may fail to start
up.
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